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Updated: Aug 21, 2026

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Published on: April 12, 2019
Quantum dynamics of H2 formation on a graphite surface through the Langmuir Hinshelwood mechanism
S Morisset1, F Aguillon, M Sizun
1Laboratoire des Collisions Atomiques et Moléculaires, Unité mixte de recherche Université Paris Sud/CNRS UMR 8625, Fédération de Recherche Lumière Matière FR2764, Bât 351, Université de Paris Sud, 91405 Orsay, France.
Abstract:
We have studied the formation of the H2 molecule on a graphite surface, when both H atoms are initially physisorbed. The graphite surface is assumed to be planar, and a model potential is obtained in a semiempirical way to reproduce the experimental properties of H physisorption on graphite. The reaction probability has been computed in the case when the angular momentum of the relative H-H motion lies parallel to the surface plane. Three-dimensional wave packet calculations have been performed for collision energies ranging from 2 to 50 meV. It is shown that the reaction occurs with a significant probability and produces the H2 molecule with a considerable amount of vibrationnal energy. A simple mechanical model is presented, where desorption of the nascent H2 molecule results from two successive binary elastic collisions.
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